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https://github.com/trezor/trezor-firmware.git
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67ac4078f7
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141 lines
4.9 KiB
Python
141 lines
4.9 KiB
Python
from common import * # isort:skip
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from trezor.crypto import aesgcm
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class TestCryptoAes(unittest.TestCase):
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# test vectors from
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# https://csrc.nist.gov/CSRC/media/Projects/Cryptographic-Algorithm-Validation-Program/documents/mac/gcmtestvectors.zip
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vectors = [
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(
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"11754cd72aec309bf52f7687212e8957",
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"3c819d9a9bed087615030b65",
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"",
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"",
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"",
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"250327c674aaf477aef2675748cf6971",
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),
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(
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"fe9bb47deb3a61e423c2231841cfd1fb",
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"4d328eb776f500a2f7fb47aa",
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"f1cc3818e421876bb6b8bbd6c9",
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"",
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"b88c5c1977b35b517b0aeae967",
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"43fd4727fe5cdb4b5b42818dea7ef8c9",
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),
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(
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"6f44f52c2f62dae4e8684bd2bc7d16ee7c557330305a790d",
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"9ae35825d7c7edc9a39a0732",
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"37222d30895eb95884bbbbaee4d9cae1",
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"1b4236b846fc2a0f782881ba48a067e9",
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"a54b5da33fc1196a8ef31a5321bfcaeb",
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"1c198086450ae1834dd6c2636796bce2",
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),
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(
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"05f714021372ae1c8d72c98e6307fbddb26ee27615860a9fb48ba4c3ea360a00",
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"c0",
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"ec3afbaa1447e47ce068bffb787bd0cadc9f0deceb11fa78e981271390578ae95891f26664b5e62d1fd5fd0d0767a54da5f86f",
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"faf9fa457a8e70ea709da28545f18f041351e8d5",
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"c8c5816ba9e7e0d20820dc0064a519a277889f5ac9661c9882b5a9896fd12836c6721514e885b1d34f5e888d1d85abce8c2ebb",
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"0856f211fade7d26d64478ca46025a3c",
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),
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]
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def test_gcm(self):
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for vector in self.vectors:
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key, iv, pt, aad, ct, tag = map(unhexlify, vector)
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# Test encryption.
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ctx = aesgcm(key, iv)
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if aad:
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ctx.auth(aad)
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self.assertEqual(ctx.encrypt(pt), ct)
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self.assertEqual(ctx.finish(), tag)
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# Test decryption.
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ctx.reset(iv)
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if aad:
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ctx.auth(aad)
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self.assertEqual(ctx.decrypt(ct), pt)
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self.assertEqual(ctx.finish(), tag)
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def test_gcm_in_place(self):
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for vector in self.vectors:
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key, iv, pt, aad, ct, tag = map(unhexlify, vector)
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buffer = bytearray(pt)
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# Test encryption.
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ctx = aesgcm(key, iv)
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if aad:
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ctx.auth(aad)
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returned = ctx.encrypt_in_place(buffer)
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self.assertEqual(buffer, ct)
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self.assertEqual(returned, len(buffer))
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self.assertEqual(ctx.finish(), tag)
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# Test decryption.
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ctx.reset(iv)
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if aad:
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ctx.auth(aad)
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returned = ctx.decrypt_in_place(buffer)
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self.assertEqual(buffer, pt)
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self.assertEqual(returned, len(buffer))
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self.assertEqual(ctx.finish(), tag)
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def test_gcm_chunks(self):
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for vector in self.vectors:
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key, iv, pt, aad, ct, tag = map(unhexlify, vector)
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chunk1 = len(pt) // 3
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# Decrypt by chunks and add authenticated data by chunks.
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ctx = aesgcm(key, iv)
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self.assertEqual(ctx.decrypt(ct[:chunk1]), pt[:chunk1])
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ctx.auth(aad[:17])
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self.assertEqual(ctx.decrypt(ct[chunk1:]), pt[chunk1:])
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ctx.auth(aad[17:])
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self.assertEqual(ctx.finish(), tag)
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# Encrypt by chunks and add authenticated data by chunks.
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ctx.reset(iv)
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ctx.auth(aad[:7])
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self.assertEqual(ctx.encrypt(pt[:chunk1]), ct[:chunk1])
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ctx.auth(aad[7:])
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self.assertEqual(ctx.encrypt(pt[chunk1:]), ct[chunk1:])
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self.assertEqual(ctx.finish(), tag)
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def test_gcm_chunks_in_place(self):
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for vector in self.vectors:
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key, iv, pt, aad, ct, tag = map(unhexlify, vector)
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buffer = bytearray(ct)
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chunk1_length = len(pt) // 3
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chunk2_length = len(pt) - chunk1_length
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# Decrypt by chunks and add authenticated data by chunks.
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ctx = aesgcm(key, iv)
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returned = ctx.decrypt_in_place(memoryview(buffer)[: chunk1_length])
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self.assertEqual(returned, chunk1_length)
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ctx.auth(aad[:17])
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returned = ctx.decrypt_in_place(memoryview(buffer)[chunk1_length:])
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ctx.auth(aad[17:])
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self.assertEqual(returned, chunk2_length)
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self.assertEqual(buffer, pt)
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self.assertEqual(ctx.finish(), tag)
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# Encrypt by chunks and add authenticated data by chunks.
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ctx.reset(iv)
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ctx.auth(aad[:7])
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returned = ctx.encrypt_in_place(memoryview(buffer)[: chunk1_length])
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self.assertEqual(returned, chunk1_length)
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ctx.auth(aad[7:])
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returned = ctx.encrypt_in_place(memoryview(buffer)[chunk1_length:])
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self.assertEqual(returned, chunk2_length)
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self.assertEqual(buffer, ct)
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self.assertEqual(ctx.finish(), tag)
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if __name__ == "__main__":
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unittest.main()
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